| Literature DB >> 25941351 |
Enxiu Wang1, Liang-Chuan Wang2, Ching-Yi Tsai1, Vijay Bhoj1, Zack Gershenson3, Edmund Moon2, Kheng Newick2, Jing Sun2, Albert Lo4, Timothy Baradet1, Michael D Feldman1, David Barrett3, Ellen Puré4, Steven Albelda2, Michael C Milone5.
Abstract
Chimeric antigen receptors (CAR) bearing an antigen-binding domain linked in cis to the cytoplasmic domains of CD3ζ and costimulatory receptors have provided a potent method for engineering T-cell cytotoxicity toward B-cell leukemia and lymphoma. However, resistance to immunotherapy due to loss of T-cell effector function remains a significant barrier, especially in solid malignancies. We describe an alternative chimeric immunoreceptor design in which we have fused a single-chain variable fragment for antigen recognition to the transmembrane and cytoplasmic domains of KIR2DS2, a stimulatory killer immunoglobulin-like receptor (KIR). We show that this simple, KIR-based CAR (KIR-CAR) triggers robust antigen-specific proliferation and effector function in vitro when introduced into human T cells with DAP12, an immunotyrosine-based activation motifs-containing adaptor. T cells modified to express a KIR-CAR and DAP12 exhibit superior antitumor activity compared with standard first- and second-generation CD3ζ-based CARs in a xenograft model of mesothelioma highly resistant to immunotherapy. The enhanced antitumor activity is associated with improved retention of chimeric immunoreceptor expression and improved effector function of isolated tumor-infiltrating lymphocytes. These results support the exploration of KIR-CARs for adoptive T-cell immunotherapy, particularly in immunotherapy-resistant solid tumors. ©2015 American Association for Cancer Research.Entities:
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Year: 2015 PMID: 25941351 PMCID: PMC4490943 DOI: 10.1158/2326-6066.CIR-15-0054
Source DB: PubMed Journal: Cancer Immunol Res ISSN: 2326-6066 Impact factor: 11.151